Rashid T, Banerjee M, Nikolic M
Molecular and Developmental Neurobiology Medical Research Council Centre, New Hunt's House, King's College London, London, SE1 1UL, United Kingdom.
J Biol Chem. 2001 Dec 28;276(52):49043-52. doi: 10.1074/jbc.M105599200. Epub 2001 Oct 16.
The small GTPase Rac and its effectors, the Pak1 and p35/Cdk5 kinases, have been assigned important roles in regulating cytoskeletal dynamics in neurons. Our previous work revealed that the neuronal p35/Cdk5 kinase associates with Pak1 in a RacGTP-dependent manner, causing hyperphosphorylation and down-regulation of Pak1 kinase activity. We have now demonstrated direct phosphorylation of Pak1 on threonine 212 by the p35/Cdk5 kinase. In neuronal growth cones, Pak1 phosphorylated on Thr-212 localized to actin and tubulin-rich areas, suggesting a role in regulating growth cone dynamics. The expression of a non-phosphorylatable Pak1 mutant (Pak1A212) induced dramatic neurite disorganization. We also observed a strong association between p35/Cdk5 and the Pak1 C-terminal kinase domain. Overall, our data show that in neurons, membrane-associated, active Pak1 is regulated by the p35/Cdk5 kinase both by association and phosphorylation, which is essential for the proper regulation of the cytoskeleton during neurite outgrowth and remodeling.
小GTP酶Rac及其效应器Pak1和p35/Cdk5激酶在调节神经元细胞骨架动力学方面发挥着重要作用。我们之前的研究表明,神经元p35/Cdk5激酶以RacGTP依赖的方式与Pak1结合,导致Pak1激酶活性的过度磷酸化和下调。我们现在已经证明p35/Cdk5激酶可直接将Pak1的苏氨酸212位点磷酸化。在神经元生长锥中,苏氨酸212位点磷酸化的Pak1定位于富含肌动蛋白和微管蛋白的区域,提示其在调节生长锥动力学方面发挥作用。非磷酸化Pak1突变体(Pak1A212)的表达导致显著的神经突紊乱。我们还观察到p35/Cdk5与Pak1 C末端激酶结构域之间存在强烈的结合。总体而言,我们的数据表明,在神经元中,膜相关的活性Pak1通过结合和磷酸化受到p35/Cdk5激酶的调节,这对于神经突生长和重塑过程中细胞骨架的正常调节至关重要。